Difference between revisions of "Server.c"

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// good sock function ref at
+
{{legacy}}
// http://www.opengroup.org/onlinepubs/009695399/idx/networking.html
+
<source lang="c">
 +
// This article and all its includes are licenced under LGPL
 +
// GPL: http://www.gnu.org/copyleft/lesser.html
 +
// SRC: http://www.organicdesign.co.nz/server.c
  
// Set up socket and listening loop
+
#define svrDELAY 0        // normal operation is 0 for no delay
#define PAKSIZE 128   // keep packet-size small for non-multithreaded design
+
#define svrPAKSIZE 128     // keep packet-size small for non-multithreaded design
#define BUFSIZE 10000 // dictates max message size
+
#define svrPAKMAX  16384  // maximum packet size to allow for variable pak size at runtime
#define MAXCLIENTS 1000
+
#define svrBUFSIZE 4096    // dictates max message size
 
+
#define svrMAXCLIENTS 1000 // used by listen()
// - todo: don't exit on connect errors, keep trying every 10s
+
#ifndef __WIN32__
// Includes for socket (trying to use one source cpp for osx,win32,*ux)
+
#define WSAGetLastError() errno
#ifdef WINDOWS
 
#include <winsock.h>
 
#else
 
#include <sys/socket.h>
 
#include <sys/select.h>
 
#include <netinet/in.h>
 
#include <fcntl.h> // needed for O_NONBLOCK option on server
 
#include <sys/time.h> // for select()
 
//#include <arpa/inet.h>
 
//#include <netdb.h>
 
 
#endif
 
#endif
  
int processMessage(char* msg);
+
// Socket structures, globals and prototypes
void noblock(int socket);
+
void server();
 
+
int serverInit();
// Set up structures for socket & select
+
int serverExit();
 +
int nonblocking(int socket);
 +
fd_set *fdsetInit(int fd);
 +
fd_set fdset;
 +
int sock,fd;
 
struct sockaddr_in addr;
 
struct sockaddr_in addr;
struct timeval timeout;
+
struct timeval to;
fd_set *fdset;
+
unsigned long int sockopt_on;
int server, sockopt_on = 1, szAddr = sizeof(struct sockaddr_in);
 
memset((char*)&addr, 0, szAddr); // zero the struct
 
addr.sin_family = PF_INET;
 
addr.sin_port = htons(atoi(*hash("port")));
 
addr.sin_addr.s_addr = htonl(INADDR_ANY);
 
  
// Do the usual socket polava: create,options,bind,listen
+
// Client/Stream info structure, globals and prototypes
if ((server = socket(PF_INET, SOCK_STREAM, IPPROTO_TCP)) < 0) logAdd("socket() failed!");
+
char *pBuf;                // Buffer to read/write data packets
if (setsockopt(server, SOL_SOCKET, SO_REUSEADDR, &sockopt_on, sizeof(int)) < 0) logAdd("setsockopt() failed!");
+
const char *term = "\r\n\r\n";
if (bind(nonblocking(server), (struct sockaddr*)&addr, szAddr) < 0) logAdd("bind() failed!");
+
typedef struct siStruct {
if (listen(server, MAXCLIENTS) < 0) logAdd("listen() failed!");
+
int fd;                // File-descriptor for this stream
 +
char *iBuf, *oBuf;    // Message buffers for this stream
 +
int iPtr;              // Index into input-buffer for next packet to start at
 +
int tPtr;              // Index into term (atomised strcmp incase terminator spans packet-boundary)
 +
int oPtr;
 +
} streamInfo;
 +
void client();
 +
int streamOpen(int fd,char *resource);
 +
void streamClose(streamInfo *stream);
 +
void streamProcess(streamInfo *stream);
  
// Declare the nodal server-iteration function
 
void network() {
 
  
// NOTE: no need for si struct, just use individual States in streamNode-assocs
+
// Initialise socket listening on specified port
 +
int serverInit() {
  
int i;
+
#if __WIN32__
int *stream = nodeGetState(this, STREAM);
+
WSADATA wsaData;
char *inbuf = nodeGetState(this, INBUF);
+
if (WSAStartup(MAKEWORD(2,0),&wsaData)!=0) logErr("WSAStartup() failed!");
char *outbuf = nodeGetState(this, OUTBUF);
+
#endif
timeout.tv_sec = 1; // later use 0 for min time
 
timeout.tv_usec = 0;
 
  
// Check for new connection
+
// Set up structures for socket & select
FD_ZERO(fdset);
+
sockopt_on = 1;
FD_SET(server,fdset);
+
int szAddr = sizeof(struct sockaddr_in);
if (select(server+1, fdset, NULL, NULL, &timeout)>0) {
+
memset((char*)&addr, 0, szAddr); // zero the struct
// New connection, create new stream & node
+
addr.sin_family = AF_INET;
int *newstream = malloc(sizeof(int));
+
addr.sin_port = htons(port);
nonblocking(*newstream = accept(server, NULL, NULL));
+
addr.sin_addr.s_addr = htonl(INADDR_ANY);
nodeSetState(newNode, STREAM, newstream);
+
errno = 0;
  
*nodeSetState(newNode, INBUF, malloc(BUFSIZE)) = '\0';
+
// Do the usual socket polava: create,options,bind,listen
*nodeSetState(newNode, INPTR, malloc(sizeof(int*))) = 0;
+
if ((sock = socket(PF_INET,SOCK_STREAM,IPPROTO_TCP))<0)
 +
logErrNum("init/socket() failed returning %d",WSAGetLastError());
 +
if (setsockopt(sock,SOL_SOCKET,SO_REUSEADDR,(char*)&sockopt_on,sizeof(int))<0)
 +
logErrNum("init/setsockopt() failed returning %d",WSAGetLastError());
 +
if (bind(nonblocking(sock),(struct sockaddr*)&addr,szAddr)<0)
 +
logErrNum("init/bind() failed returning %d",WSAGetLastError());
 +
if (listen(sock,svrMAXCLIENTS)<0)
 +
logErrNum("init/listen() failed returning %d",WSAGetLastError());
  
*nodeSetState(newNode, OUTBUF, malloc(BUFSIZE)) = '\0';
+
if (WSAGetLastError() == 0) {
*nodeSetState(newNode, OUTPTR, malloc(sizeof(int*))) = 0;
+
char *msg = malloc(100);
 +
sprintf(msg,"Daemon \"%s\" started successfully and serving on port %d.",peer,port);
 +
logAdd(msg);
 +
free(msg);
 +
}
 +
else {
 +
logAdd("Server failed to start!");
 +
return WSAGetLastError();
 
}
 
}
  
// Data to receive?
+
// Globals for server() and client() quantum-functions
FD_ZERO(fdset);
+
pBuf = malloc(svrPAKMAX);
FD_SET(*stream,fdset);
+
*nodeState(nodeSERVER,0) = &server;
if (select(1+*stream, fdset, NULL, NULL, &timeout)>0) {
+
nodeSetValue(nodeSERVER,nodeCODE,nodeTRUE);
// read a packet into inbuf
+
 
if ((i = recv(*stream, inbuf+*inptr, PAKSIZE, 0)>0) {
+
return 0;
if (complete_message) {
+
}
*inptr -= msg_size;
+
 
// hook a process into the loop
+
 
}
+
// Perform any cleanup for socket
}
+
int serverExit() {
else if (i == 0) {
+
free(pBuf);
// zero bytes to read, do orderly termination
+
// todo: close streams and free buffers etc
// todo: remove this stream node from loop
+
#if __WIN32__
free(stream);
+
WSACleanup();
free(inbuf);
+
#endif
free(inptr);
+
return WSAGetLastError();
free(outbuf);
+
}
free(outptr);
+
 
}
+
 
else logErr("recv(): failed!");
+
// make the passed socket non-blocking so accept() returns straight away for multiplexed model
 +
// - if no incoming requests, returns EAGAIN or EWOULDBLOCK state
 +
int nonblocking(int socket) {
 +
#if __WIN32__
 +
ioctlsocket(socket,FIONBIO,&sockopt_on);
 +
#else
 +
fcntl(socket,F_SETFL,fcntl(socket,F_GETFL)|O_NONBLOCK);
 +
#endif
 +
return socket;
 +
}
 +
 
 +
 
 +
// Return pointer to fdset filled with passed file-descriptor ready for a select() call
 +
fd_set *fdsetInit(int fd) {
 +
FD_ZERO(&fdset);
 +
FD_SET(fd,&fdset);
 +
to.tv_sec = to.tv_usec = svrDELAY;
 +
return &fdset;
 +
}
 +
 
 +
 
 +
// Process message in iBuf which should be a complete HTTP GET request
 +
// - iPtr is put back to 0 so next message fills from start of iBuf
 +
void streamProcess(streamInfo *stream) {
 +
char *rqst, *end, *msg = stream->iBuf;
 +
if (strncmp("GET /",msg,5)==0) {
 +
 
 +
// Extract request path & query-string
 +
rqst = end = msg+4;
 +
while(*++end > ' ');
 +
*end = '\0';
 +
printf("Request:\"%s\"\n",rqst);
 +
 
 +
// Exit if /stop requested
 +
if (strcmp("/stop",rqst)==0) nodeExit();
 +
 
 +
// Send test response back
 +
send(stream->fd,"HTTP/1.1 200 OK\r\nDate: Mon, 31 Jul 2006 22:27:14 NZST\r\nContent-Type: text/html\r\nConnection: keep-alive\r\nContent-Length: 9\r\n\r\nStink eh?",134,0);
 +
}
 +
else {
 +
send(stream->fd,"HTTP/1.1 200 OK\r\nDate: Mon, 31 Jul 2006 22:27:14 NZST\r\nContent-Type: text/html\r\nConnection: keep-alive\r\nContent-Length: 9\r\n\r\nNo GET!!!",134,0);
 +
logAdd("Peerd only supports GET requests currently!");
 
}
 
}
 +
stream->iPtr = 0; // reset iPtr ready for next message
 +
}
  
  
// Data to send?
+
// Create new client-node and streamInfo structure from passed file-descriptor
FD_ZERO(fdset);
+
// - if fd is NULL, then try and create one by resolving the resource string
FD_SET(*stream,fdset);
+
void streamOpen(int fd, char *resource) {
if (select(1+*stream, NULL, fdset, NULL, &timeout)>0) {
+
if (fd == NULL) {
// write a packet from outbuf
+
// if resource is /^[./]/ then its a file
 +
// - file will have different packet size etc
 +
// - may need to include &recv/&read etc in streamInfo struct
 
}
 
}
 +
if (fd < 0) return logErrMsg("Couldn't open resource \"%s\"",resource);
 +
logAddNum("New connection: Stream%d.",fd);
 +
// Create new streamInfo structure and allocate buffers
 +
streamInfo *stream = malloc(sizeof(streamInfo));
 +
stream->fd = fd;
 +
stream->iBuf = malloc(svrBUFSIZE);
 +
stream->oBuf = malloc(svrBUFSIZE);
 +
stream->iPtr = stream->oPtr = stream->tPtr = 0;
  
 +
// Create new client-node in clients-loop and add the new streamInfo
 +
node nc = nodeGetValue(nodeCLIENTS,nodeLOOP);
 +
nc = nodeLoopInsert(nc,0);
 +
nodeSetValue(nodeCLIENTS,nodeLOOP,nc);
 +
nodeSetValue(nc,nodeCODE,nodeTRUE);
 +
*nodeState(nc,0) = &client;
 +
*nodeState(nc,nodeSTREAM) = stream;
 
}
 
}
  
// Parses a message content and responds to client
 
int processMessage(char* msg) {
 
// test if restart cmd first
 
  
// send response
+
// Close the passed stream, free its resources and remove from clients-loop
// - NOTE: this should put the msg in si.out
+
void streamClose(streamInfo *stream) {
if (send(stream, MSG, strlen(MSG)+1, 0) == -1) logAdd("send() failed!");
+
printf("Stream%d closed.\n",stream->fd);
else logAdd("Sent message");
+
//nodeLoopRemove(this); // NOTE: reduction not handling PREV
 +
free(stream->iBuf);
 +
free(stream->oBuf);
 +
free(stream);
 
}
 
}
  
// make the server non-blocking so accept() returns straight away
+
 
// - if no incoming requests, returns EAGAIN or EWOULDBLOCK state
+
// Each of the stream nodes points to this function in its State
// - we need this for non-multithreaded design
+
void client() {
// - this may need to be done for each new incomming stream...?
+
 
// - some examples use fcntl(server, F_SETFL, FNDELAY) or fcntl(server, F_SETFL, O_NONBLOCK);
+
// Get pointer to the streamInfo structure in current nodal context (this)
int nonblocking(int socket) {
+
streamInfo *stream = *nodeState(this, nodeSTREAM);
int opts = fcntl(server, F_GETFL);
+
fd = stream->fd;
if (opts<0) logAdd("noblock() failed!");
+
char *iBuf = stream->iBuf, *oBuf = stream->oBuf;
opts = (opts|O_NONBLOCK);
+
int n, i = 0;
if (fnctl(socket,F_SETFL,opts)<0) logAdd("noblock() failed!");
+
 
return socket;
+
// If any data to recieve, read a packet
 +
if (select(fd+1,fdsetInit(fd),NULL,NULL,&to)>0) {
 +
if ((n = recv(fd,pBuf,svrPAKSIZE,0)) > 0) {
 +
// Some bytes were read, append to current message (loop last packet if msg too big)
 +
if (stream->iPtr > svrBUFSIZE-svrPAKSIZE) stream->iPtr -= svrPAKSIZE;
 +
while (n--)  // Append current msg, for each complete msg, process it & reset iPtr
 +
if ((iBuf[stream->iPtr++] = pBuf[i++]) != term[stream->tPtr++]) stream->tPtr = 0;
 +
else if (term[stream->tPtr] == 0) streamProcess(stream);
 +
}
 +
else if (n == 0) streamClose(stream); // Zero bytes were read, do orderly termination
 +
else logErrNum("client/recv() failed returning %d",WSAGetLastError());
 +
}
 +
 
 +
// Data to send?
 +
//if (select(fd+1,NULL,fdsetInit(fd),NULL,&to)>0) {
 +
// write a packet from outbuf
 +
//int len = svrPAKSIZE; // or less
 +
//if (send(fd,oBuf+oPtr,len,0)<0) logErr("send() failed!");
 +
// }
 +
 
 +
}
 +
 
 +
 
 +
// Function called by each stream-node in network's reduction loop
 +
// - Checks if any new connections waiting on listening socket,
 +
//  if so accept and call streamOpen() with new file-descriptor
 +
void server() {
 +
if (select(sock+1,fdsetInit(sock),NULL,NULL,&to)>0)
 +
if ((fd = nonblocking(accept(sock,NULL,NULL)))>0) streamOpen(fd,NULL);
 +
else logErrNum("server/accept() failed returning %d",WSAGetLastError());
 
}
 
}
 +
</source>
 +
[[Category:C]]

Latest revision as of 15:22, 6 July 2015

Legacy.svg Legacy: This article describes a concept that has been superseded in the course of ongoing development on the Organic Design wiki. Please do not develop this any further or base work on this concept, now this page is for historic record only.
// This article and all its includes are licenced under LGPL
// GPL: http://www.gnu.org/copyleft/lesser.html
// SRC: http://www.organicdesign.co.nz/server.c

#define svrDELAY 0         // normal operation is 0 for no delay
#define svrPAKSIZE 128     // keep packet-size small for non-multithreaded design
#define svrPAKMAX  16384   // maximum packet size to allow for variable pak size at runtime
#define svrBUFSIZE 4096    // dictates max message size
#define svrMAXCLIENTS 1000 // used by listen()
#ifndef __WIN32__
#define WSAGetLastError() errno
#endif

// Socket structures, globals and prototypes
void server();
int serverInit();
int serverExit();
int nonblocking(int socket);
fd_set *fdsetInit(int fd);
fd_set fdset;
int sock,fd;
struct sockaddr_in addr;
struct timeval to;
unsigned long int sockopt_on;

// Client/Stream info structure, globals and prototypes
char *pBuf;                // Buffer to read/write data packets
const char *term = "\r\n\r\n";
typedef struct siStruct {
	int fd;                // File-descriptor for this stream
	char *iBuf, *oBuf;     // Message buffers for this stream
	int iPtr;              // Index into input-buffer for next packet to start at
	int tPtr;              // Index into term (atomised strcmp incase terminator spans packet-boundary)
	int oPtr;
	} streamInfo;
void client();
int streamOpen(int fd,char *resource);
void streamClose(streamInfo *stream);
void streamProcess(streamInfo *stream);


// Initialise socket listening on specified port
int serverInit() {

	#if __WIN32__
	WSADATA wsaData;
	if (WSAStartup(MAKEWORD(2,0),&wsaData)!=0) logErr("WSAStartup() failed!");
	#endif

	// Set up structures for socket & select
	sockopt_on = 1;
	int szAddr = sizeof(struct sockaddr_in);
	memset((char*)&addr, 0, szAddr); // zero the struct
	addr.sin_family = AF_INET;
	addr.sin_port = htons(port);
	addr.sin_addr.s_addr = htonl(INADDR_ANY);
	errno = 0;

	// Do the usual socket polava: create,options,bind,listen
	if ((sock = socket(PF_INET,SOCK_STREAM,IPPROTO_TCP))<0)
		logErrNum("init/socket() failed returning %d",WSAGetLastError());
	if (setsockopt(sock,SOL_SOCKET,SO_REUSEADDR,(char*)&sockopt_on,sizeof(int))<0)
		logErrNum("init/setsockopt() failed returning %d",WSAGetLastError());
	if (bind(nonblocking(sock),(struct sockaddr*)&addr,szAddr)<0)
		logErrNum("init/bind() failed returning %d",WSAGetLastError());
	if (listen(sock,svrMAXCLIENTS)<0)
		logErrNum("init/listen() failed returning %d",WSAGetLastError());

	if (WSAGetLastError() == 0) {
		char *msg = malloc(100);
		sprintf(msg,"Daemon \"%s\" started successfully and serving on port %d.",peer,port);
		logAdd(msg);
		free(msg);
		}
	else {
		logAdd("Server failed to start!");
		return WSAGetLastError();
		}

	// Globals for server() and client() quantum-functions
	pBuf = malloc(svrPAKMAX);
	*nodeState(nodeSERVER,0) = &server;
	nodeSetValue(nodeSERVER,nodeCODE,nodeTRUE);

	return 0;	
	}


// Perform any cleanup for socket
int serverExit() {
	free(pBuf);
	// todo: close streams and free buffers etc
	#if __WIN32__
	WSACleanup();
	#endif
	return WSAGetLastError();
	}


// make the passed socket non-blocking so accept() returns straight away for multiplexed model
// - if no incoming requests, returns EAGAIN or EWOULDBLOCK state
int nonblocking(int socket) {
	#if __WIN32__
	ioctlsocket(socket,FIONBIO,&sockopt_on);
	#else
	fcntl(socket,F_SETFL,fcntl(socket,F_GETFL)|O_NONBLOCK);
	#endif
	return socket;
	}


// Return pointer to fdset filled with passed file-descriptor ready for a select() call
fd_set *fdsetInit(int fd) {
	FD_ZERO(&fdset);
	FD_SET(fd,&fdset);
	to.tv_sec = to.tv_usec = svrDELAY;
	return &fdset;
	}


// Process message in iBuf which should be a complete HTTP GET request
// - iPtr is put back to 0 so next message fills from start of iBuf
void streamProcess(streamInfo *stream) {
	char *rqst, *end, *msg = stream->iBuf;
	if (strncmp("GET /",msg,5)==0) {

		// Extract request path & query-string
		rqst = end = msg+4;
		while(*++end > ' ');
		*end = '\0';
		printf("Request:\"%s\"\n",rqst);

		// Exit if /stop requested
		if (strcmp("/stop",rqst)==0) nodeExit();

		// Send test response back
		send(stream->fd,"HTTP/1.1 200 OK\r\nDate: Mon, 31 Jul 2006 22:27:14 NZST\r\nContent-Type: text/html\r\nConnection: keep-alive\r\nContent-Length: 9\r\n\r\nStink eh?",134,0);
		}
	else {
		send(stream->fd,"HTTP/1.1 200 OK\r\nDate: Mon, 31 Jul 2006 22:27:14 NZST\r\nContent-Type: text/html\r\nConnection: keep-alive\r\nContent-Length: 9\r\n\r\nNo GET!!!",134,0);
		logAdd("Peerd only supports GET requests currently!");
		}
	stream->iPtr = 0; // reset iPtr ready for next message
	}


// Create new client-node and streamInfo structure from passed file-descriptor
// - if fd is NULL, then try and create one by resolving the resource string
void streamOpen(int fd, char *resource) {
	if (fd == NULL) {
		// if resource is /^[./]/ then its a file
		// - file will have different packet size etc
		// - may need to include &recv/&read etc in streamInfo struct
		}
	if (fd < 0) return logErrMsg("Couldn't open resource \"%s\"",resource);
	logAddNum("New connection: Stream%d.",fd);
	// Create new streamInfo structure and allocate buffers
	streamInfo *stream = malloc(sizeof(streamInfo));
	stream->fd = fd;
	stream->iBuf = malloc(svrBUFSIZE);
	stream->oBuf = malloc(svrBUFSIZE);
	stream->iPtr = stream->oPtr = stream->tPtr = 0;

	// Create new client-node in clients-loop and add the new streamInfo
	node nc = nodeGetValue(nodeCLIENTS,nodeLOOP);
	nc = nodeLoopInsert(nc,0);
	nodeSetValue(nodeCLIENTS,nodeLOOP,nc);
	nodeSetValue(nc,nodeCODE,nodeTRUE);
	*nodeState(nc,0) = &client;
	*nodeState(nc,nodeSTREAM) = stream;
	}


// Close the passed stream, free its resources and remove from clients-loop
void streamClose(streamInfo *stream) {
	printf("Stream%d closed.\n",stream->fd);
	//nodeLoopRemove(this); // NOTE: reduction not handling PREV
	free(stream->iBuf);
	free(stream->oBuf);
	free(stream);
	}


// Each of the stream nodes points to this function in its State
void client() {

	// Get pointer to the streamInfo structure in current nodal context (this)
	streamInfo *stream = *nodeState(this, nodeSTREAM);
	fd = stream->fd;
	char *iBuf = stream->iBuf, *oBuf = stream->oBuf;
	int n, i = 0;

	// If any data to recieve, read a packet
	if (select(fd+1,fdsetInit(fd),NULL,NULL,&to)>0) {
		if ((n = recv(fd,pBuf,svrPAKSIZE,0)) > 0) {
			// Some bytes were read, append to current message (loop last packet if msg too big)
			if (stream->iPtr > svrBUFSIZE-svrPAKSIZE) stream->iPtr -= svrPAKSIZE;
			while (n--)  // Append current msg, for each complete msg, process it & reset iPtr
				if ((iBuf[stream->iPtr++] = pBuf[i++]) != term[stream->tPtr++]) stream->tPtr = 0;
				else if (term[stream->tPtr] == 0) streamProcess(stream);
			}
		else if (n == 0) streamClose(stream); // Zero bytes were read, do orderly termination
		else logErrNum("client/recv() failed returning %d",WSAGetLastError());
		}

	// Data to send?
	//if (select(fd+1,NULL,fdsetInit(fd),NULL,&to)>0) {
		// write a packet from outbuf
		//int len = svrPAKSIZE; // or less
		//if (send(fd,oBuf+oPtr,len,0)<0) logErr("send() failed!");
	//	}

	}


// Function called by each stream-node in network's reduction loop
// - Checks if any new connections waiting on listening socket,
//   if so accept and call streamOpen() with new file-descriptor
void server() {
	if (select(sock+1,fdsetInit(sock),NULL,NULL,&to)>0)
		if ((fd = nonblocking(accept(sock,NULL,NULL)))>0) streamOpen(fd,NULL);
		else logErrNum("server/accept() failed returning %d",WSAGetLastError());
	}